Olgenblum Gil I, Stewart Claire J, Redvanly Thomas W, Young Owen M, Lauzier Francis, Hazlett Sophia, Wang Shikun, Rockcliffe David A, Parnham Stuart, Pielak Gary J, Harries Daniel
Institute of Chemistry, the Fritz Haber Research Center, and the Harvey M. Kruger Center for Nanoscience & Nanotechnology, The Hebrew University, Jerusalem, Israel.
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.
Protein Sci. 2025 Apr;34(4):e70062. doi: 10.1002/pro.70062.
Protein-protein interactions are modulated by their environment. High macromolecular solute concentrations crowd proteins and shift equilibria between protein monomers and their assemblies. We aim to understand the mechanism of crowding by elucidating the molecular-level interactions that determine dimer stability. Using F-NMR spectroscopy, we studied the effects of various polyethylene glycols (PEGs) on the equilibrium thermodynamics of two protein complexes: a side-by-side and a domain-swap dimer. Analysis using our mean-field crowding model shows that, contrary to classic crowding theories, PEGs destabilize both dimers through enthalpic interactions between PEG and the monomers. The enthalpic destabilization becomes more dominant with increasing PEG concentration because the reduction in PEG mesh size with concentration diminishes the stabilizing effect of excluded volume interactions. Additionally, the partially folded domain-swap monomers fold in the presence of PEG, contributing to dimer stabilization at low PEG concentrations. Our results reveal that polymers crowd protein complexes through multiple conjoined mechanisms, impacting both their stability and oligomeric state.
蛋白质-蛋白质相互作用受其环境调节。高分子溶质的高浓度使蛋白质拥挤,并改变蛋白质单体与其组装体之间的平衡。我们旨在通过阐明决定二聚体稳定性的分子水平相互作用来理解拥挤的机制。利用F-核磁共振光谱,我们研究了各种聚乙二醇(PEG)对两种蛋白质复合物平衡热力学的影响:一种是并排二聚体,另一种是结构域交换二聚体。使用我们的平均场拥挤模型进行分析表明,与经典拥挤理论相反,PEG通过PEG与单体之间的焓相互作用使两种二聚体都不稳定。随着PEG浓度的增加,焓不稳定变得更加显著,因为PEG网孔尺寸随浓度的减小削弱了排除体积相互作用的稳定作用。此外,部分折叠的结构域交换单体在PEG存在下折叠,有助于在低PEG浓度下使二聚体稳定。我们的结果表明,聚合物通过多种联合机制使蛋白质复合物拥挤,影响其稳定性和寡聚状态。